AU2003248160B2 - Conveying system with a slide-over device between two belt conveyors, slide-over device and intermediate element with a slide-over surface - Google Patents

Conveying system with a slide-over device between two belt conveyors, slide-over device and intermediate element with a slide-over surface Download PDF

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Publication number
AU2003248160B2
AU2003248160B2 AU2003248160A AU2003248160A AU2003248160B2 AU 2003248160 B2 AU2003248160 B2 AU 2003248160B2 AU 2003248160 A AU2003248160 A AU 2003248160A AU 2003248160 A AU2003248160 A AU 2003248160A AU 2003248160 B2 AU2003248160 B2 AU 2003248160B2
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Prior art keywords
conveyor belt
conveying
slide
fingers
over
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AU2003248160A1 (en
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Sjoerd De Geus
Gijsbertus Johannes Verduijn
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Rexnord Flattop Europe BV
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Rexnord Flattop Europe BV
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65GTRANSPORT OR STORAGE DEVICES, e.g. CONVEYORS FOR LOADING OR TIPPING, SHOP CONVEYOR SYSTEMS OR PNEUMATIC TUBE CONVEYORS
    • B65G47/00Article or material-handling devices associated with conveyors; Methods employing such devices
    • B65G47/52Devices for transferring articles or materials between conveyors i.e. discharging or feeding devices
    • B65G47/66Fixed platforms or combs, e.g. bridges between conveyors

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Structure Of Belt Conveyors (AREA)
  • Chain Conveyers (AREA)
  • Belt Conveyors (AREA)
  • Feeding Of Articles By Means Other Than Belts Or Rollers (AREA)
  • Intermediate Stations On Conveyors (AREA)
  • Sampling And Sample Adjustment (AREA)
  • Centrifugal Separators (AREA)
  • Electrical Discharge Machining, Electrochemical Machining, And Combined Machining (AREA)
  • Framework For Endless Conveyors (AREA)

Abstract

An intermediate element (T) for a conveying system (1) or slide-over device (20), comprising a bar or plate-shaped element having a first back part (26) that includes a plurality of fingers (11) that form a comb-shaped part (R) of a slide-over surface (22), and a further back part (28) which is staggered with respect to the first back part (26) and which during use is located lower with respect to the slide-over surface (22) and which is arranged to reach under and to support the top run (8a) of a conveyor belt (7).

Description

P AOPER\fLGAI2562750 Is.dm-27/11I200S 00 Z CONVEYING SYSTEM WITH A SLIDE-OVER DEVICE BETWEEN TWO 00 BELT CONVEYORS, SLIDE-OVER DEVICE AND INTERMEDIATE ELEMENT WITH A SLIDE-OVER SURFACE This invention relates to a conveying system, comprising an endless 00 first conveyor belt circulating between at least first and second divert elements, a top run of the first conveyor belt forming a first conveying surface Smovable between the divert elements in a first conveying direction, and an endless second conveyor belt circulating between at least third and fourth divert elements, a top run of the second conveyor belt forming a second conveying surface movable between the divert elements in a second conveying direction, the top run of the second conveyor belt extending at least partly above and along the second divert element, so that the first and second conveyor belts, while including a gap-shaped interspace, are in mutually transverse alignment.
Such a conveying system is known from EP 0 722 896.
Conveying systems of the type mentioned in the opening paragraph hereof are generally known and are used for conveying products in, for instance, the packaging and food industries. The conveyor belts of these systems can be designed, for instance, as rubber mats or metal mesh belts, but also as modular mats or chains from metal and/or plastic. The divert elements can then be designed, for instance, as pulleys, but also, for instance, as single or multiple chain wheels. In conveying systems, often a number of conveyor belts are connected in succession.
At places where products are to be conveyed to or from the conveying surface, as at right-angled and in-line transitions between conveyor belts and at processing stations, slide-over devices are used. An example of such a slide-over device is a slide-over plate with fingers that cooperate with grooves formed in the surface of a conveyor belt.
P OPERflG01256275 I sp doc-27/I1i12)8 00 2 Z The conveying systems are increasingly used to convey small batches 00 of products. Preferably, the conveying systems are then designed such that the conveying system is self-clearing, without human intervention. A drawback of the slide-over plates, also called finger plates or combs, is that at 5 the end of a production run, the last products remain behind on the slide-over 00 plates.
To mitigate this disadvantage, the conveying system mentioned in the (opening paragraph hereof has been developed. What can be achieved owing to the top run of the second conveyor belt extending at least partly above and alongside the second divert element, is that the conveying surfaces link up without an intervening "dead" area. To make the gap-shaped interspace as small as possible, the longitudinal edge of the second conveyor belt facing the first conveyor belt is provided with a bevel.
A drawback of the conveying system mentioned in the opening paragraph hereof is that where less stable products are involved, the interspace between the first and the second conveyor belt may be too large, so that the products may fall over. The longitudinal edge of the second conveyor belt then forms, as it were, a bumper. A further disadvantage is that the longitudinal edge mentioned is susceptible to damage resulting from products butting against the edge.
In accordance with a first aspect of the present invention, there is provided a conveying system, comprising an endless first conveyor belt circulating between at least first and second divert elements, a top run of the first conveyor belt forming a first conveying surface movable between the divert elements in a first conveying direction; an endless second conveyor belt circulating between third and fourth divert elements, a top run of the second conveyor belt forming a second conveying surface movable between the divert elements in a second conveying direction, the top run of the second conveyor belt extending at least partly P: OPER\TLGU\2562750 I d-2711 1/200R 00 -2A- Z above and along the second divert element, so that the first and second 00 conveyor belts, while including an interspace defining a gap, are in mutually transverse alignment; and at least one comb-shaped intermediate element in the interspace and bridging the gap between the first and the second conveying surface, wherein 00 the at least one intermediate element reaches under the top run of the second conveyor belt.
N In accordance with a second aspect of the present invention, there is provided a conveying system, comprising an endless first conveyor belt circulating between at least first and second divert elements, a top run of the first conveyor belt forming a first conveying surface movable between the divert elements in a first conveying direction; an endless second conveyor belt circulating between third and fourth divert elements, a top run of the second conveyor belt forming a second conveying surface movable between the divert elements in a second conveying direction, the top run of the second conveyor belt extending at least partly above and along the second divert element, so that the first and second conveyor belts, while including an interspace defining a gap, are in mutually transverse alignment; and at least one intermediate element in the interspace and bridging the gap between the first and the second conveying surface, wherein the at least one intermediate element supports the top run of the second conveyor belt.
In accordance with a third aspect of the present invention, there is provided a conveying system, comprising an endless first conveyor belt forming a first conveying surface movable in a first conveying direction; an endless second conveyor belt forming a second conveying surface movable in a second conveying direction transverse to the first conveying direction, the first and second conveyor belts defining a gap therebetween; and P OPER\TLG1I2562750 spa doc-27/I1/2008 00 0 C0 -2B- Z at least one intermediate element bridging the gap between the first 00 and the second conveying surfaces, said intermediate element having a first portion extending under the second conveyor belt and a second portion 0 including fingers extending into grooves formed in the first conveyor belt.
By the use of an intermediate element, the longitudinal edge of the 00 second conveyor belt can be protected, while furthermore the products can be prevented from falling over. The intermediate element(s) can be manufactured Sfrom material that is less sensitive to wear than the conveyor belt and can, for instance, be replaced as a loose unit.
WO 2004/005169 PCT/NL2003/000504 3 The intermediate elements can for instance be provided with a substantially horizontally oriented supporting surface which forms a slideover surface that is arranged in the entry of the gap-shaped space.
The intermediate elements preferably comprise fingers extending preferably in uniformly spaced-apart relation, parallel to the conveying direction of the first conveyor belt. Back parts of the fingers can then form a grid-shaped part of the slide-over surface at the entry of the gap between the first conveying surface and the second conveying surface. With the aid of such a grid-shaped slide-over surface, not only can products be supported during slide-over, but also the entry of larger dirt entities into the gap can be prevented, while smaller dirt entities can be discharged between the fingers via the gap. This is specifically important with modular mats, since in the case of such mats the gap size between the first and the second conveyor varies. In such a modular conveying mat, the mat, when passing around the chain wheel, forms a rotating polygon whose angular points may jam dirt entities in the gap. Especially in the case of modular mats from plastic material, where abrasive pollutions, such as glass frits, may get stuck, considerable damages may be prevented by the grid formed by the fingers.
The slide-over surface may then be built up from a substantially closed part of the supporting surface, with the grid-shaped part contiguous thereto, as with a comb or finger plate.
Naturally, the slide-over surface can also be made of fully grid-shaped or fully closed design. In the case of a fully grid-shaped slide-over surface, the intermediate elements can be formed by loose fingers.
The fingers can be made, for instance, of bar-shaped design and may optionally be provided with a plate-shaped supporting part of substantially upstanding orientation. Naturally, the fingers and the supporting part may be integrated to form a single component.
P :OPERMhG126275O Ipda .27/I 112008 00 4 z In accordance with a preferred embodiment, in the event of damage to 00 the fingers, the fingers can be replaced individually or in groups, while the longitudinal edge of the conveyor belt remains intact.
A further advantage of intermediate elements designed as fingers, or provided with fingers, is that the fingers can cooperate with grooves in the 00 surface of the first conveyor belt, extending in the conveying direction. The fingers are then preferably provided with a first back part which extends Sfrom the second conveying surface into the first conveying surface. In this way, the products can be readily moved from the first conveying surface onto the slide-over surface. Furthermore, in a similar manner, any larger fouling entities can be taken from the first conveying surface, and be discharged via the slide-over surface. Also, as a consequence, the intermediate elements can optionally be supported on the first conveying surface. The grooves in the surface of the conveying mat can for instance be formed by slots in a substantially flat surface of the conveyor belt, but may also be formed, for instance, between upstanding ribs on the surface of the conveyor belt. The walls and the bottom of the grooves may be staggered or even be locally interrupted.
It will be clear that in such an arrangement the slide-over surface formed by the backs of the fingers may overlap with the first conveying surface. Furthermore, it will be clear that the non-overlapping part of the slide-over surface may form a stationary, "dead" area. To prevent the possibility of products remaining behind on this slide-over surface when the conveyor belt is running empty, the length of the slide-over surface between the first conveying surface and the second conveying surface in a first conveying direction is preferably made smaller than the minimum dimension of the base of the product to be conveyed.
It will furthermore be clear that the system can be traversed with products in two directions. In the case of 'ascending' conveyance, the products are slid over from the first conveying surface via the slide-over surface to the P:OPER\XTLGXI2627A) Ispa.doC-27/?1 j2I 8 00 z second conveying surface. In the case of 'descending' conveyance, this order is 00 reversed.
(N
By providing the longitudinal edge of the second conveyor belt facing 0the first conveyor belt with a bevel, the width of the gap can be reduced.
Such a bevel constitutes a reduction and can have a substantially straight 00 configuration, but can naturally also have a different configuration, such as a concave configuration, a convex configuration or a combined configuration.
Preferably, the intermediate elements, in particular the fingers, are provided with a further back part which is situated lower with respect to the slide-over surface formed by the first back part, and which is formed to correspond to the bevel of the longitudinal edge of the second conveyor belt.
What can thus be achieved is that the intermediate elements can link up very closely with the longitudinal edge of the second conveyor belt.
In an advantageous embodiment, the fingers reach under the top run of the second conveyor belt. What can thus be achieved is that the intermediate elements can, for instance, be secured on a supporting frame of the second conveyor belt. In a particularly elegant design, the intermediate elements support the top run of the second conveyor belt. What can be achieved by guiding the second conveyor belt over a lower portion of the intermediate elements is that alignment of the second conveying surface relative to the slide-over surface in a height direction is not necessary.
It is noted that the slide-over surface, the first conveying surface and the second conveying surface do not need to be situated at the same height.
Preferably, however, the surfaces referred to are situated substantially at the same height. To effect proper removal of products from the slide-over surface in the case of ascending conveyance, from the first belt to the second belt, the slide-over surface can be chosen to be slightly lower than the first conveying surface and the second conveying surface. The slide-over surface may then form, for instance, a pit which is lowered relative to the second conveying surface and the first conveying surface. Also, the slide-over surface P:OPERTIG21627 0 Ispdoc-27I11 2120 00 6 0 z can form steps with the first and second conveying surface. In case of 00 descending conveyance, i.e. from the second belt to the first belt, this relation can be the other way around.
0In a further advantageous embodiment, the intermediate elements comprise fingers which are groupwise connected with a central carrier. In 00 that case, the central carrier together with the fingers can form a comb, which can be replaced as a unit. Also, the fingers may be connected to the (central carrier such that they are each separately detachable. The fingers can then be secured to a support, directly or by way of a central carrier. What can thus be achieved is that a finger can be replaced as a separate unit.
Advantageously, the fingers can be provided with a breaking point in that, for instance, the surface area of the cross section is locally smaller than at adjacent parts of the finger. What can thus be achieved is that in case of any overloading or damage, the finger breaks off in a redefined manner which does not impede the functioning of the conveying system.
In a further advantageous embodiment, the intermediate elements, in particular the fingers, are arranged so as to be movable transversely to the conveying direction of the first conveyor belt. What can thus be achieved is that any variation in width of the conveyor belt as a result of temperature change during operation can be accommodated. This is specifically important in the case of wide modular conveying mats from plastic material, such as conveying mats that are used in tunnel pasteurizers, heaters or coolers. The fingers may then be arranged so as to be slidable each separately or in groups, for instance by slidably connecting the fingers directly or via a central carrier with a support.
In accordance with a fourth aspect of the present invention, there is provided a slide-over device, comprising a central carrier with a number of mutually spaced-apart, substantially parallel extending fingers, back parts of the fingers forming a comb-shaped part of a slide-over surface, wherein the slide-over device is provided with an endless conveyor belt circulating P:\OPER\TLG\I25,2750 Is.doX-27/ 112008 00 7 between at least two divert elements, a top run of the endless conveyor belt 00 forming a conveying surface movable between the divert elements in a conveying direction, which conveying surface is in substantially flat alignment with the slide-over surface, and a further back part of the fingers
\O
extends under the conveying surface.
00 The conveying surface can be substantially contiguous to the slide-over Cc surface. The slide-over surface can then be fully grid-shaped, so that the 0backs of the fingers link up directly with the conveying surface, but it may also link up with the conveying surface by way of a closed part. Preferably, the fingers extend substantially transversely to the conveying direction of the conveyor belt.
In accordance with a fifth aspect of the present invention, there is provided an intermediate element for a conveying system including an endless first conveyor belt forming a first conveying surface movable in a first conveying direction and an endless second conveyor belt forming a second conveying surface movable in a second conveying direction transverse to the first conveying direction, said intermediate element comprising: a first back part which during use forms a slide-over surface on which a product being conveyed slides from the first conveyor belt to the second conveyor belt; and a further back part which is staggered with respect to the first back part and which during use is located lower with respect to the slide-over surface and which is formed to correspond to a longitudinal edge of the second conveyor belt and extend under the second conveyor belt.
The intermediate element may be substantially bar- or plate-shaped.
Further advantageous embodiments of the invention are represented in the description of the drawings and in the dependent claims.
P:AOPER\TLG125627 O lI.doc-.21/I1120S 00 7A Z The invention will further be described by way of non-limiting example 00 only, with reference to the drawings, in which: Fig. 1 shows a schematic perspective view of a conveying system in accordance with a preferred embodiment of the invention; and Fig. 2 shows a schematic cross section of the conveying system of 00 Fig. 1.
In the figures, the same or corresponding parts are designated with the N same reference numerals.
Referring to Figs. 1 and 2, there is shown a conveying system 1. The conveying system 1 comprises an endless conveyor belt 3 circulating between first divert wheels 2A (not shown) and second divert wheels 2B.
The first conveyor belt 3 comprises a top run 4A and a bottom run 4B. The top run 4A forms a first conveying surface 5 movable between the first and second divert wheels in a first conveying direction represented by arrow P1.
The conveying system 1 further comprises an endless second conveyor belt 7 WO 2004/005169 PCT/NL2003/000504 circulating between third divert wheels 6A (not shown) and fourth divert wheels 6B (not shown). The second conveyor belt 7 comprises a top run 8A and a bottom run 8B. The top run 8A forms a second conveying surface 9, movable between the third and fourth divert wheels in a second conveying direction indicated by the arrow P2. The top run 8A of the second conveyor belt 7 extends at least partly above and alongside the second divert wheels 2B. In particular, the top run 8A of the second conveyor belt 7 extends at least partly above and along a downwardly extending quadrant aligning with the first conveying surface 5, of the second divert element formed by the second divert wheels 2B.
The first conveyor belt 3 and the second conveyor belt 7 are in transverse mutual alignment, thereby including a gap-shaped interspace Arranged in the interspace 10 are intermediate elements T, designed as fingers 11, which bridge the gap 10 between the first conveying surface and the second conveying surface 9. The intermediate elements T are of comb-shaped design and comprise a central carrier 31 with fingers 11. The central carrier 31 defines a substantially flat, closed part V of the slide-over surface, while the back parts of the fingers form a grid-shaped part R of the slide-over surface.
In this exemplary embodiment, the conveying system 1 further comprises a third endless conveyor belt 12, which circulates between fifth and sixth divert wheels, not shown. The third conveyor belt 12 runs parallel to the second conveyor belt 7, while the third conveying surface 13 formed by the top run of the third conveyor belt 12 is situated substantially in the same plane as the second conveying surface 9. The third conveying surface 13 moves between the fifth and the sixth divert wheels, preferably in the same direction as the second conveying surface 9, that is, in the second conveying direction indicated by arrow P2. The second conveyor belt 7 and the third conveyor belt 12 bound each other by their longitudinal edges 14 and 15, respectively.
WO 2004/005169 PCT/NL2003/000504 9 A product 16, in this exemplary embodiment a bottle, moves along the path indicated by the arrow P3 over the conveying path formed by the conveyor belts 3, 7 and 12. The products 16 are supplied in the first conveying direction P1 and are moved along a guide 17 from the first conveying surface 5, via the grid-shaped part R of the slide-over surface 22 formed by the back parts 26 of the fingers 11, and the closed part V of the slide-over surface 22 formed by the central carrier, onto the second conveying surface 9. By the use of the fingers 11, the longitudinal edge 18 of the second conveyor belt 7 is protected, while further the falling over of products 16 is prevented. To avoid the possibility that products, when the conveyor path is running empty, remain standing on the slide-over surface 22, the length of the slide-over surface 22 between the first conveying surface 5 and the second conveying surface 9, viewed in the first conveying direction, that is, in the direction of arrow P1, has been chosen to be less than the minimum dimension of the base 23 of a product 16 to be conveyed.
Optionally, any products that remain standing on the slide-over surface 22 can be pushed on in a mechanical manner, for instance with an arm or with a vibrating device.
Upon arrival at the second conveying surface 9, the products 16 are moved further via the guide 17 onto the third conveying surface 13 of the third conveyor belt 12. Because the second conveyor belt 7 and the third conveyor belt 12 run in the same direction, the gap-shaped interspace 19 included between the second conveyor belt 7 and the third conveyor belt 12 can be very narrow, thus avoiding problems of damage to the longitudinal edge 15 and products falling oiver.i:i, It is noted that the grid-shaped part R of the slide-over surface 22 may link up directly with the second conveying surface 9. The central carrier 31 or the finger 11 may then continue under the second conveying surface 9; in that case, the closed part V of the slide-over surface 22 is not present.
WO 2004/005169 PCT/NL2003/000504 For the sake of good order, it is further noted that the third conveyor belt 12 as such is not requisite. If desired, just a second conveyor belt 7 will suffice. Optionally, the second conveyor belt 7 can be designed to have a large width transversely to the second conveying direction P2.
However, the fingers 11 and the second conveyor belt 7 may be part of a slide-over device 20 which is placed in-between the first conveyor belt 3 and the third conveyor belt 12. This can provide the advantage that the first and third conveyor belts can each have their own track construction and that the slide-over device 20 is supported independently. In the exemplary embodiment represented here, however, the slide-over device 20 is supported on the frame 21 of the third conveyor belt 12.
The slide-over device 20 can also be applied between a first conveyor belt 3 and a third conveyor belt 12 whose conveying directions are equally directed. In the case of such a tail-end transition between the conveyors, the slide-over device 20 can be placed between the two conveyor belts, so that the second conveyor belt 7 has one extreme longitudinal edge 18 extending above and along the second chain wheels 2B of the first conveyor and has another extreme longitudinal edge 14 extending above and along the fifth chain wheels of the third conveyor belt. For the sake of good order, it is noted here that the second conveyor belt may be built up from a number of parallel conveyor belts, such as a number of chain tracks running next to each other. Naturally, also the first and the third conveyor belts can be built up from several parallel belts whose top runs in each case jointly form a conveying surface.
In the following, a few constructional details of the exemplary embodiment represented here will be further elucidated.
The first conveyor belt 3 is designed as a modular conveying mat which is built up from a number of successive modules 23A in conveying direction P1, which have been coupled through hinge pins 24. Transversely to the conveying direction P1, the mat is built up from a number of WO 2004/005169 PCT/NL2003/000504 11 juxtaposed rows of modules 23A which have been coupled according to a brick pattern by the hinge pins 24 extending throughout width of the mat.
The construction of such a modular conveying mat is known to those skilled in the-art, for instance from US 3,870,141, WO 00/13993 or EP 0 903 247.
The second conveyor belt 7 is here likewise designed as a modular conveying mat:from plastic material. This modular conveying mat is built up from just a single row of successive modules 23B in the second conveying direction P2, coupled by means of hinge pins (not shown). The longitudinal edge 15 proximal to the first conveyor belt 3 is provided with a bevel to make the gap-shaped interspace 10 between the first conveyor belt 3 and the second conveyor belt 7 as small as possible. Such a beveled conveying mat is known, for instance, from EP 0 722 896. It is noted that the bevel may also be built up from separate modules which are secured to longitudinal edges of the individual modules 23.
The third conveyor belt 12 is built up from a number of parallel tracks of modular chain. Each chain track is built up from a number of successive modules 23C in conveying direction P2, coupled by hinge pins.
The hinge pins couple only the successive modules of a chain track, so that the juxtaposed tracks of the chain are not coupled. Such a modular chain is known to those skilled in the art and is described inter alia in EP 0 344 411 or EP 0 700 843.
The fingers 11 are plate-shaped and extend next to each other, upstanding, equidistantly spaced, parallel to the first conveying direction P1. Back parts 26 of the fingers 11 form a grid-shaped slide-over surface 22 at the entry 27 of the gap The fingers 11 cooperate with grooves 28 extending in conveying direction P1 in the surface of the first conveyor belt 7. The slide-over surface 22 formed by the back parts 26 of the fingers 11overlaps the first conveying surface 5: the fingers 11 reach into the first conveying surface 5. The fingers 11 are provided with a further back part 28 which has been formed to WO 2004/005169 PCT/NL2003/000504 12 correspond to the bevel 29 of the longitudinal edge 18 of the second conveyor belt 7 facing the first conveying mat. By way of their plate-shaped supporting parts 30, the fingers 11 reach under the top run 8A of the second conveyor belt 7. The fingers support the top run 8A of the second conveyor belt 7 and form a guide 32 for the guiding projections 33 of the modules 23B of the top run 8A of the second conveyor belt 7. The first conveying surface the second conveying surface 9 and the slide-over surface 22 are situated substantially at the same level. As shown, the slide-over surface 22 can be chosen to be just slightly lower than the second conveying surface 9, which in turn is situated just slightly lower than the first conveying surface 5. The fingers 11 are here each non-detachably connected with a central carrier 31.
The fingers 11 are connected to the frame 21 by way of the central carrier 31, such that they are slidable transversely to the conveying direction P1 of the first conveyor belt 3, that is, in the conveying direction P2 of the second conveyor belt 7. To that end, the central carrier 31 is supported on a support 33 arranged on the track frame 21 of the third conveyor belt 12, but, as stated, may also be supported by an independent frame. Naturally, the fingers can also be supported on the track frame of the first conveyor belt 3.
Accordingly, the slide-over device can be supported on the track frame of the first and/or the second conveyor belt and may further be supported on a frame of its own.
It is noted that the individual fingers can be differently designed, and the interspace between the successive fingers can be different, for instance when the pattern of grooves in the first conveyor belt 3 has been chosen to be of a design with alternating interspaces or of an irregular design. Also, a supporting surface formed by the intermediate elements can be designed as a slide-over plate which may or may not be provided with apertures or grooves, which is arranged in the entry of the gap-shaped interspace.
Furthermore, instead of being designed as a modular conveying mat, a conveyor belt can also be manufactured in one piece.
PAOPERMThGU2562750 ll,,dop.-27II/20 00 13 0 z In addition, both the first and the second conveyor belt can circulate 00 between more than two divert elements. For instance, the second conveyor belt can circulate in a rectangle, passing around four divert elements, while 0optionally a further divert element may be used to tension the belt.
While various embodiments of the present invention have been 00 described above, it should be understood that they have been presented by way of example only, and not by way of limitation. It will be apparent to a 0 person skilled in the relevant art that various changes in form and detail can be made therein without departing from the spirit and scope of the invention.
Thus, the present invention should not be limited by any of the above described exemplary embodiments.
Throughout this specification and the claims which follow, unless the context requires otherwise, the word "comprise", and variations such as "comprises" and "comprising", will be understood to imply the inclusion of a stated integer or step or group of integers or steps but not the exclusion of any other integer or step or group of integers or steps.
The reference in this specification to any prior publication (or information derived from it), or to any matter which is known, is not, and should not be taken as an acknowledgment or admission or any form of suggestion that that prior publication (or information derived from it) or known matter forms part of the common general knowledge in the field of endeavour to which this specification relates.

Claims (17)

1. A conveying system, comprising an endless first conveyor belt circulating between at least first and second divert elements, a top run of the first conveyor belt forming a first 00 conveying surface movable between the divert elements in a first conveying Cc direction; an endless second conveyor belt circulating between third and fourth divert elements, a top run of the second conveyor belt forming a second conveying surface movable between the divert elements in a second conveying direction, the top run of the second conveyor belt extending at least partly above and along the second divert element, so that the first and second conveyor belts, while including an interspace defining a gap, are in mutually transverse alignment; and at least one comb-shaped intermediate element in the interspace and bridging the gap between the first and the second conveying surface, wherein the at least one intermediate element reaches under the top run of the second conveyor belt.
2. A conveying system according to claim 1 wherein in the interspace a plurality of intermediate elements are arranged, and wherein back parts of the intermediate elements, at the entry of the gap between the first conveying surface and the second conveying surface, form a comb-shaped part of a slide-over surface between the first and the second conveying surfaces.
3. A conveying system according to claim 2, wherein the comb-shaped part of the slide-over surface is mutually spaced apart fingers extending in the first conveying direction.
4. A conveying system according to claim 3, wherein the fingers P.OPERTLGI256275 I1po doc.27/1 V200 00 Z extending in the first conveying direction cooperate with grooves in the 00 surface of the first conveyor belt. A conveying system according to claim 2, wherein the comb-shaped part of the slide-over surface extends from the second conveying surface into 00 the first conveying surface.
6. A conveying system according to claim 1, wherein a longitudinal edge of the second conveyor belt that faces the first conveyor belt is provided with a bevel.
7. A conveying system according to claim 6, wherein the at least one intermediate element reaching under the top run of the second conveyor belt is formed to correspond to the bevel.
8. A conveying system according to claim 1, wherein the at least one intermediate element comprises a plate-shaped supporting part.
9. A conveying system according to claim 1 wherein at least two of the at least one intermediate elements are groupwise connected with a central carrier. A conveying system according to claim 1, wherein the at least one intermediate element includes fingers provided with a breaking point.
11. A conveying system according to claim 1, wherein the at least one intermediate element is slidable transversely to the conveying direction of the first conveyor belt.
12. A conveying system according to claim 1, wherein at least one of the P.%OPER\TLGI256275O Ispo.doc-2711 m2008 00 16 z first conveyor belt and the second conveyor belt is built up from one or more 00 rows of successive modules in the conveying direction of the conveyor belt, which modules are pivotally coupled with the aid of hinge pins extending transversely to the conveying direction of the conveyor belt. 00
13. A conveying system, comprising an endless first conveyor belt circulating between at least first and (N second divert elements, a top run of the first conveyor belt forming a first conveying surface movable between the divert elements in a first conveying direction; an endless second conveyor belt circulating between third and fourth divert elements, a top run of the second conveyor belt forming a second conveying surface movable between the divert elements in a second conveying direction, the top run of the second conveyor belt extending at least partly above and along the second divert element, so that the first and second conveyor belts, while including an interspace defining a gap, are in mutually transverse alignment; and at least one intermediate element in the interspace and bridging the gap between the first and the second conveying surface, wherein the at least one intermediate element supports the top run of the second conveyor belt.
14. An intermediate element for a conveying system including an endless first conveyor belt forming a first conveying surface movable in a first conveying direction and an endless second conveyor belt forming a second conveying surface movable in a second conveying direction transverse to the first conveying direction, said intermediate element comprising: a first back part which during use forms a slide-over surface on which a product being conveyed slides from the first conveyor belt to the second conveyor belt; and P.NOPERIflC'L23627O Isp. dow-27/ 1120)B 00 17 0 z a further back part which is staggered with respect to the first back 00 part and which during use is located lower with respect to the slide-over surface and which is formed to correspond to a longitudinal edge of the second conveyor belt and extend under the second conveyor belt. \O 00 A slide-over device, comprising a central carrier with a number of mutually spaced-apart, substantially parallel extending fingers, back parts of the fingers forming a comb-shaped part of a slide-over surface, wherein the slide-over device is provided with an endless conveyor belt circulating between at least two divert elements, a top run of the endless conveyor belt forming a conveying surface movable between the divert elements in a conveying direction, which conveying surface is in substantially flat alignment with the slide-over surface, and a further back part of the fingers extends under the conveying surface.
16. A slide-over device according to claim 15, wherein the fingers extend substantially transversely to the conveying direction of the conveyor belt.
17. A slide-over device according to claim 15, wherein the further back part of the fingers support the top run of the second conveyor belt.
18. A conveying system, comprising an endless first conveyor belt forming a first conveying surface movable in a first conveying direction; an endless second conveyor belt forming a second conveying surface movable in a second conveying direction transverse to the first conveying direction, the first and second conveyor belts defining a gap therebetween; and at least one intermediate element bridging the gap between the first and the second conveying surfaces, said intermediate element having a first P:\OPERVTLG\1256275f Ipo doc-27/11/ I2I) 00 0 18 z portion extending under the second conveyor belt and a second portion 00 including fingers extending into grooves formed in the first conveyor belt. O 19. The conveying system as in claim 18, in which a top run of the second conveyor belt forms the second conveying surface movable between first and 00 second divert elements in the second conveying direction, the top run of the second conveyor belt extending at least partly above and along the second Sdivert element, so that the first and second conveyor belts, while including an interspace defining a gap, are in mutually transverse alignment. A conveying system substantially as hereinbefore described with reference to the drawings and/or Examples.
21. An intermediate element substantially as hereinbefore described with reference to the drawings and/or Examples.
22. A slide-over device substantially as hereinbefore described with reference to the drawings and/or Examples.
AU2003248160A 2002-07-09 2003-07-09 Conveying system with a slide-over device between two belt conveyors, slide-over device and intermediate element with a slide-over surface Ceased AU2003248160B2 (en)

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NL1021038A NL1021038C2 (en) 2002-07-09 2002-07-09 Transport system and transfer device.
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PCT/NL2003/000504 WO2004005169A1 (en) 2002-07-09 2003-07-09 Conveying system with a slide-over device between two belt conveyors, slide-over device and intermediate element with a lide-over surface

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Families Citing this family (12)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
NL1021038C2 (en) * 2002-07-09 2004-01-16 Mcc Nederland Transport system and transfer device.
DE102005006203A1 (en) * 2005-02-11 2006-08-24 Khs Ag transport means
GB0620838D0 (en) * 2006-10-20 2006-11-29 Sheppee Internat Ltd Distributor for a train of containers
NL2003487C2 (en) * 2009-09-14 2011-03-15 Rexnord Flattop Europe Bv TRANSPORT SYSTEM.
US8157083B2 (en) * 2009-12-23 2012-04-17 Laitran, L.L.C. Self-clearing conveyor transfer system and transfer plate
DE102010016020A1 (en) 2010-03-19 2011-09-22 Krones Ag Feed unit for a transport system for articles
NL2012375B1 (en) 2014-03-06 2015-12-03 Rexnord Flattop Europe Bv Transfer device, conveyor system including a transfer device and method of transferring conveyed products.
DE102014103711A1 (en) * 2014-03-19 2015-09-24 Krones Ag Deflection device for objects and methods for deflecting objects
DE102014108333B4 (en) * 2014-06-13 2017-10-19 Khs Gmbh transport system
NL2013917B1 (en) * 2014-12-04 2016-10-11 Rexnord Flattop Europe Bv Conveying of plastic bottles.
ES2684984B1 (en) 2017-03-31 2019-04-04 Afher Eurobelt S A Transfer comb and transfer system between two belt conveyors
CN108328213A (en) * 2018-04-19 2018-07-27 上海利来链条有限公司 Modular mesh belt chain and mesh belt system

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE2508275A1 (en) * 1975-02-26 1976-09-16 Enzinger Union Werke Ag Multiple slat conveyor junction - has narrow bridging strip to transfer work at right angles
DE2604705A1 (en) * 1976-02-06 1977-08-11 Alfred Gabriel Chaunier Delivery apparatus for bottle type container - has separating and transferring equipment for bottle rows between feeder conveyor and removal conveyor
DE19632376A1 (en) * 1996-08-10 1998-02-12 Top Foerdertechnik Gmbh Corner station for belt conveyor
US6138819A (en) * 1997-06-11 2000-10-31 The Laitram Corporation Article transfer assemblies for conveyor belts

Family Cites Families (13)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3870141A (en) 1970-08-13 1975-03-11 Laitram Corp Modular belt
DE8700878U1 (en) * 1986-01-31 1987-03-05 Niko Konserven-Maschinenfabrik Hinsbeck Gmbh & Co Kg, 4054 Nettetal Device for transporting bottles, cans, etc.
DE3818231A1 (en) 1988-05-28 1989-12-07 Rexnord Kette Gmbh & Co Kg CURVED PLATE TAPE CONVEYOR
NL9201813A (en) * 1992-10-19 1994-05-16 Mcc Nederland Comb-shaped member for receiving products supplied by a conveyor mat.
US5634550A (en) 1993-03-12 1997-06-03 Rexnord Corporation Direction changing mechanism for transferring articles between transverse conveyors
NL9401477A (en) 1994-09-09 1996-04-01 Mcc Nederland Chain for a chain conveyor.
US5850902A (en) 1995-10-06 1998-12-22 The Laitram Corporation Transferring articles from a moving belt edge onto a normally disposed moving conveyor belt
US5597063A (en) * 1995-11-06 1997-01-28 The Laitram Corporation Removal of glass articles from conveyor belts
NL1002390C2 (en) 1996-02-19 1997-08-20 Mcc Nederland Transport mat built from plastic modules and modules for such a transport mat.
EP0903247A1 (en) 1997-09-19 1999-03-24 Simplex AG Bern Process and apparatus for the partial coating of a paper web with a pressure sensitive medium
NL1008070C2 (en) * 1998-01-19 1999-07-20 Mcc Nederland Transport system for transporting products, as well as sliding device.
NL1010040C2 (en) 1998-09-09 2000-03-10 Mcc Nederland Transport mat built from plastic modules and a module for such a transport mat.
NL1021038C2 (en) * 2002-07-09 2004-01-16 Mcc Nederland Transport system and transfer device.

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE2508275A1 (en) * 1975-02-26 1976-09-16 Enzinger Union Werke Ag Multiple slat conveyor junction - has narrow bridging strip to transfer work at right angles
DE2604705A1 (en) * 1976-02-06 1977-08-11 Alfred Gabriel Chaunier Delivery apparatus for bottle type container - has separating and transferring equipment for bottle rows between feeder conveyor and removal conveyor
DE19632376A1 (en) * 1996-08-10 1998-02-12 Top Foerdertechnik Gmbh Corner station for belt conveyor
US6138819A (en) * 1997-06-11 2000-10-31 The Laitram Corporation Article transfer assemblies for conveyor belts

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US20080047805A1 (en) 2008-02-28
US20060254882A1 (en) 2006-11-16
NL1021038C2 (en) 2004-01-16
DE60319244D1 (en) 2008-04-03
DK1911700T3 (en) 2013-07-29
DK1546011T3 (en) 2008-06-16
US7314130B2 (en) 2008-01-01
ZA200500118B (en) 2006-02-22
EP1911700A2 (en) 2008-04-16
AU2003248160A1 (en) 2004-01-23
ES2299728T3 (en) 2008-06-01
DK200400339U3 (en) 2005-02-11
CA2491892C (en) 2011-03-22
DE20380264U1 (en) 2005-04-21
EP1546011B1 (en) 2008-02-20
DE60319244T2 (en) 2009-02-26
WO2004005169A1 (en) 2004-01-15
BR0305356A (en) 2004-10-05
EP1911700A3 (en) 2008-04-23
CA2491892A1 (en) 2004-01-15
EP1546011A1 (en) 2005-06-29
ATE386699T1 (en) 2008-03-15
US7448490B2 (en) 2008-11-11
BR0305356B1 (en) 2012-10-16
EP1911700B1 (en) 2013-05-22

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DA2 Applications for amendment section 104

Free format text: THE NATURE OF THE AMENDMENT IS: AMEND THE INVENTION TITLE TO READ CONVEYING SYSTEM WITH A SLIDE-OVER DEVICE BETWEEN TWO BELT CONVEYORS, SLIDE-OVER DEVICE AND INTERMEDIATE ELEMENT WITH A SLIDE-OVER SURFACE.

DA3 Amendments made section 104

Free format text: THE NATURE OF THE AMENDMENT IS: AMEND THE INVENTION TITLE TO READ CONVEYING SYSTEM WITH A SLIDE-OVER DEVICE BETWEEN TWO BELT CONVEYORS, SLIDE-OVER DEVICE AND INTERMEDIATE ELEMENT WITH A SLIDE-OVER SURFACE

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